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Soft Matter Science and Engineering: The next Step for Polymer Researches ³ÌÏÈÉúÀ´Ó¦»¯Ëù×÷±¨¸æ,Õû¸ö»áÒéÊÒ¶¼¼·µÄûÁË×ùλ,»¹ÓÐÈËÕ¾×ÅÌý.²»À¢ÊÇ´óÅ£°¡ ÈÃÎÒ¼ÇÒä×îÉîµÄÒ»¾ä»°:Ò»¸öѧ¿ÆµÄ·¢Õ¹Ç°Í¾Òª¾ß±¸:1.°üÈÝÐÔ 2.ǰհÐÔ .ËûÏȽ²ÁËÈËÀà50ÄêÖ®ºóÃæÁÙµÄÊ®¸öÑϾþÎÊÌâ: 1.WATER 2.FOOD 3.ENVIRONMENT 4.POVERTY 5.TERRORISM & WAR 6.DISEASE 7.EDUCATION 8.DEMOCRACY 9.POPULATION 10.ENERGY È»ºó½²ÁËÏÖÔڵĶ«Î÷: New science: - Towards single molecules (1-, 2-, 3-D small spaces); - Soft structures and phase transitions; - Non-equilibrium phenomena in different dimensions; - Functional responses and properties in different dimensions; All of these aspect are associated with materials designs. New engineering: - Using macroscopic objects of different shapes and chemical surface functionalities to self-organize into 2D and 3D structures (> 1 m); - Design monomers to form building blocks (< 5 - 10 nm) and self- assemble into supra-structures (bottom-up); - Fabrication involves lithographic patterning. No assembly step is needed (> 30 nm) (top-down); The key is how to convert the laboratory process to commercial fabrication in macroscopic scale. ÔÚÐÂǧÄêÎÒÃǸÃ×öʲô? Biomaterials and Molecular Biology Energy generation, transmission and storage Electronics and Photonics Environmental Science and Engineering Innovative Fabrication of Products ʲôÊÇÈíÎïÖÊ¿ÆÑ§? The hierarchical building blocks of soft matter are almost all in organic or organic/inorganic nature; - Complicated architectures, anisotropic shapes, and they are bound by weak interactions; - Considering phase transitions, in most of the cases, entropy, rather than enthalpy, needs to be first accounted for; - Some of soft matter possess intermediate orders in their structures, leading to new descriptions random media using scaling laws, and new transition behaviors; - Many soft matter are not in equilibrium. One example is biological matters in-vivo. Their dynamics i.e., transport properties, are thus important; - Structures, dynamics and transitions in low dimensions ¡ in single molecules |
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